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Summary Expression Phenotypes Gene Literature (221) GO Terms (15) Nucleotides (1101) Proteins (64) Interactants (793) Wiki
XB--5736421

Papers associated with ccnb1.2



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Regulation by phosphorylation of Xenopus laevis poly(ADP-ribose) polymerase enzyme activity during oocyte maturation., Aoufouchi S, Shall S., Biochem J. July 15, 1997; 325 ( Pt 2) 543-51.


Mitogen-activated protein kinase activation down-regulates a mechanism that inactivates cyclin B-cdc2 kinase in G2-arrested oocytes., Abrieu A, Dorée M, Picard A., Mol Biol Cell. February 1, 1997; 8 (2): 249-61.


Characterization and physiological importance of a novel cell cycle regulated protein kinase in Xenopus laevis oocytes that phosphorylates cyclin B2., Derua R, Stevens I, Waelkens E, Fernandez A, Lamb N, Merlevede W, Goris J., Exp Cell Res. February 1, 1997; 230 (2): 310-24.


The human Myt1 kinase preferentially phosphorylates Cdc2 on threonine 14 and localizes to the endoplasmic reticulum and Golgi complex., Liu F, Stanton JJ, Wu Z, Piwnica-Worms H., Mol Cell Biol. February 1, 1997; 17 (2): 571-83.


Microtubule assembly in clarified Xenopus egg extracts., Parsons SF, Salmon ED., Cell Motil Cytoskeleton. January 1, 1997; 36 (1): 1-11.


Identification of BIME as a subunit of the anaphase-promoting complex., Peters JM, King RW, Höög C, Kirschner MW., Science. November 15, 1996; 274 (5290): 1199-201.


Mutagenic analysis of the destruction signal of mitotic cyclins and structural characterization of ubiquitinated intermediates., King RW, Glotzer M, Kirschner MW., Mol Biol Cell. September 1, 1996; 7 (9): 1343-57.


Mos proto-oncogene function during oocyte maturation in Xenopus., Roy LM, Haccard O, Izumi T, Lattes BG, Lewellyn AL, Maller JL., Oncogene. May 16, 1996; 12 (10): 2203-11.


Activation of the Xenopus cyclin degradation machinery by full-length cyclin A., Jones C, Smythe C., J Cell Sci. May 1, 1996; 109 ( Pt 5) 1071-9.


Dependence of Mos-induced Cdc2 activation on MAP kinase function in a cell-free system., Huang CY, Ferrell JE., EMBO J. May 1, 1996; 15 (9): 2169-73.


In vivo regulation of the early embryonic cell cycle in Xenopus., Hartley RS, Rempel RE, Maller JL., Dev Biol. February 1, 1996; 173 (2): 408-19.


Cdk2 kinase is required for entry into mitosis as a positive regulator of Cdc2-cyclin B kinase activity., Guadagno TM, Newport JW., Cell. January 12, 1996; 84 (1): 73-82.


An inhibitor of p34cdc2/cyclin B that regulates the G2/M transition in Xenopus extracts., Lee TH, Kirschner MW., Proc Natl Acad Sci U S A. January 9, 1996; 93 (1): 352-6.


Inhibition of ubiquitin-mediated proteolysis by the Arabidopsis 26 S protease subunit S5a., Deveraux Q, van Nocker S, Mahaffey D, Vierstra R, Rechsteiner M., J Biol Chem. December 15, 1995; 270 (50): 29660-3.


Presence of maturation-promoting factor in 17α,20β-dihydroxy-4-pregnen-3-one-induced oocytes of catfish, Clarias batrachus., Haider S, Balamurugan K., Fish Physiol Biochem. December 1, 1995; 14 (6): 501-8.


Cloning and characterization of the Xenopus cyclin-dependent kinase inhibitor p27XIC1., Su JY, Rempel RE, Erikson E, Maller JL., Proc Natl Acad Sci U S A. October 24, 1995; 92 (22): 10187-91.


Molecular cloning and immunological analysis of goldfish cyclin A during oocyte maturation., Katsu Y, Yamashita M, Hirai T, Tokumoto T, Kajiura H, Nagahama Y., Dev Biol. August 1, 1995; 170 (2): 616-25.


Delayed cyclin A and B1 degradation in non-transformed mammalian cells., Girard F, Fernandez A, Lamb N., J Cell Sci. July 1, 1995; 108 ( Pt 7) 2599-608.


Brefeldin A provokes indirect activation of cdc2 kinase (MPF) in Xenopus oocytes, resulting in meiotic cell division., Mulner-Lorillon O, Bellé R, Cormier P, Drewing S, Minella O, Poulhe R, Schmalzing G., Dev Biol. July 1, 1995; 170 (1): 223-9.


Cyclin B/p34cdc2 triggers phosphorylation of DNA ligase I during Xenopus laevis oocyte maturation., Aoufouchi S, Prigent C, Ford C, Thiebaud P, Thiebaud P, Philippe M, Theze N., Eur J Biochem. June 1, 1995; 230 (2): 491-7.


A 20S complex containing CDC27 and CDC16 catalyzes the mitosis-specific conjugation of ubiquitin to cyclin B., King RW, Peters JM, Tugendreich S, Rolfe M, Hieter P, Kirschner MW., Cell. April 21, 1995; 81 (2): 279-88.


Regulation of Cdc2/cyclin B activation by Ran, a Ras-related GTPase., Clarke PR, Klebe C, Wittinghofer A, Karsenti E., J Cell Sci. March 1, 1995; 108 ( Pt 3) 1217-25.


Control of the Cdc2/cyclin B complex in Xenopus egg extracts arrested at a G2/M checkpoint with DNA synthesis inhibitors., Kumagai A, Dunphy WG., Mol Biol Cell. February 1, 1995; 6 (2): 199-213.


Function and regulation of cdc25 protein phosphate through mitosis and meiosis., Jessus C, Ozon R., Prog Cell Cycle Res. January 1, 1995; 1 215-28.


Porcine brain neurofilament-H tail domain kinase: its identification as cdk5/p26 complex and comparison with cdc2/cyclin B kinase., Hisanaga S, Uchiyama M, Hosoi T, Yamada K, Honma N, Ishiguro K, Uchida T, Dahl D, Ohsumi K, Kishimoto T., Cell Motil Cytoskeleton. January 1, 1995; 31 (4): 283-97.


Association of p34cdc2 kinase and MAP kinase with microtubules during the meiotic maturation of Xenopus oocytes., Fellous A, Kubelka M, Thibier C, Taieb F, Haccard O, Jessus C., Int J Dev Biol. December 1, 1994; 38 (4): 651-9.


Cyclin A and cyclin B dissociate from p34cdc2 with half-times of 4 and 15 h, respectively, regardless of the phase of the cell cycle., Kobayashi H, Stewart E, Poon RY, Hunt T., J Biol Chem. November 18, 1994; 269 (46): 29153-60.


A MAP kinase-dependent spindle assembly checkpoint in Xenopus egg extracts., Minshull J, Sun H, Tonks NK, Murray AW., Cell. November 4, 1994; 79 (3): 475-86.


Cip1 blocks the initiation of DNA replication in Xenopus extracts by inhibition of cyclin-dependent kinases., Strausfeld UP, Howell M, Rempel R, Maller JL, Hunt T, Blow JJ., Curr Biol. October 1, 1994; 4 (10): 876-83.


Inhibition of cyclin-dependent kinases by purine analogues., Veselý J, Havlicek L, Strnad M, Blow JJ, Donella-Deana A, Pinna L, Letham DS, Kato J, Detivaud L, Leclerc S., Eur J Biochem. September 1, 1994; 224 (2): 771-86.


Cell cycle regulation of the p34cdc2 inhibitory kinases., Atherton-Fessler S, Liu F, Gabrielli B, Lee MS, Peng CY, Piwnica-Worms H., Mol Biol Cell. September 1, 1994; 5 (9): 989-1001.


Role of maturation-promoting factor (p34cdc2-cyclin B) in differential expression of the Xenopus oocyte and somatic-type 5S RNA genes., Wolf VJ, Dang T, Hartl P, Gottesfeld JM., Mol Cell Biol. July 1, 1994; 14 (7): 4704-11.


Inhibition of cdc2 activation by INH/PP2A., Lee TH, Turck C, Kirschner MW., Mol Biol Cell. March 1, 1994; 5 (3): 323-38.


Oncogenic Ras blocks cell cycle progression and inhibits p34cdc2 kinase in activated Xenopus egg extracts., Pan BT, Chen CT, Lin SM., J Biol Chem. February 25, 1994; 269 (8): 5968-75.


Regulation of cyclin B1 by estradiol and polyamines in MCF-7 breast cancer cells., Thomas T, Thomas TJ., Cancer Res. February 15, 1994; 54 (4): 1077-84.


Mitotic repression of RNA polymerase III transcription in vitro mediated by phosphorylation of a TFIIIB component., Gottesfeld JM, Wolf VJ, Dang T, Forbes DJ, Hartl P., Science. January 7, 1994; 263 (5143): 81-4.


Behavior of the components of maturation-promoting factor, cdc2 kinase and cyclin B, during oocyte maturation of goldfish., Katsu Y, Yamashita M, Kajiura H, Nagahama Y., Dev Biol. November 1, 1993; 160 (1): 99-107.


Functional analysis of the P box, a domain in cyclin B required for the activation of Cdc25., Zheng XF, Ruderman JV., Cell. October 8, 1993; 75 (1): 155-64.


Full activation of p34CDC28 histone H1 kinase activity is unable to promote entry into mitosis in checkpoint-arrested cells of the yeast Saccharomyces cerevisiae., Stueland CS, Lew DJ, Cismowski MJ, Reed SI., Mol Cell Biol. June 1, 1993; 13 (6): 3744-55.


Mitotic arrest caused by the amino terminus of Xenopus cyclin B2., van der Velden HM, Lohka MJ., Mol Cell Biol. March 1, 1993; 13 (3): 1480-8.


Phosphorylation independent activation of human cyclin-dependent kinase 2 by cyclin A in vitro., Connell-Crowley L, Solomon MJ, Wei N, Harper JW., Mol Biol Cell. January 1, 1993; 4 (1): 79-92.


Phosphorylation and activation of human cdc25-C by cdc2--cyclin B and its involvement in the self-amplification of MPF at mitosis., Hoffmann I, Clarke PR, Marcote MJ, Karsenti E, Draetta G., EMBO J. January 1, 1993; 12 (1): 53-63.


Microtubule nucleating activity of centrosomes in cell-free extracts from Xenopus eggs: involvement of phosphorylation and accumulation of pericentriolar material., Ohta K, Shiina N, Okumura E, Hisanaga S, Kishimoto T, Endo S, Gotoh Y, Nishida E, Sakai H., J Cell Sci. January 1, 1993; 104 ( Pt 1) 125-37.


Control of metaphase I formation in Xenopus oocyte: effects of an indestructible cyclin B and of protein synthesis., Huchon D, Rime H, Jessus C, Ozon R., Biol Cell. January 1, 1993; 77 (2): 133-41.


Identification of the domains in cyclin A required for binding to, and activation of, p34cdc2 and p32cdk2 protein kinase subunits., Kobayashi H, Stewart E, Poon R, Adamczewski JP, Gannon J, Hunt T., Mol Biol Cell. November 1, 1992; 3 (11): 1279-94.


Oncogenic ras triggers the activation of 42-kDa mitogen-activated protein kinase in extracts of quiescent Xenopus oocytes., Shibuya EK, Polverino AJ, Chang E, Wigler M, Ruderman JV., Proc Natl Acad Sci U S A. October 15, 1992; 89 (20): 9831-5.


Cyclin B in fish oocytes: its cDNA and amino acid sequences, appearance during maturation, and induction of p34cdc2 activation., Hirai T, Yamashita M, Yoshikuni M, Lou YH, Nagahama Y., Mol Reprod Dev. October 1, 1992; 33 (2): 131-40.


Cyclin A potentiates maturation-promoting factor activation in the early Xenopus embryo via inhibition of the tyrosine kinase that phosphorylates cdc2., Devault A, Fesquet D, Cavadore JC, Garrigues AM, Labbé JC, Lorca T, Picard A, Philippe M, Dorée M., J Cell Biol. September 1, 1992; 118 (5): 1109-20.


Control of microtubule dynamics and length by cyclin A- and cyclin B-dependent kinases in Xenopus egg extracts., Verde F, Dogterom M, Stelzer E, Karsenti E, Leibler S., J Cell Biol. September 1, 1992; 118 (5): 1097-108.


Periodic changes in phosphorylation of the Xenopus cdc25 phosphatase regulate its activity., Izumi T, Walker DH, Maller JL., Mol Biol Cell. August 1, 1992; 3 (8): 927-39.

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